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63.
雨区衰减和雷达取样误差对713型双线偏振雷达测量精度的影响 总被引:7,自引:3,他引:7
为了确定713型双线偏振雷达的探测精度,本文利用电磁波的矩阵传播法计算了考虑椭球形雨滴在不同空间取向下,雨区衰减对713型双线偏振雷达的可测量反射率因子Z_H、差反射率因子Z_(DR)的影响。并利用已有的统计理论讨论了该雷达的取样误差,为实际雷达改装工作提供了依据。 相似文献
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65.
《Comptes Rendus Geoscience》2018,350(5):222-230
A set of two-dimensional finite-element elastic models are presented to provide insights on the evolution of transtensional pull-apart basins between two right-stepping, right-lateral fault segments. Three representative fault segment interaction geometries are modelled, showing underlapping, neutral and overlapping segments. Despite the simplifications of the 2D model, overall results are obtained that might help understanding the formation of pull-apart basins. Firstly, the orientations of the local σ1 and σ3 tensional stress directions markedly depend on the segment's position. Secondly, the mean normal stress is extensional in a transtensional basin between segments, while the region outside the step is characterized by more compressive mean normal stresses. Thirdly, the angle of offset between the fault segments is one of the most important parameters controlling the geometries of the transtensional pull-apart basins: connected depocenters with basin high and lozenge shape in the case of underlapping steps, spindle shape or lazy S or Z shape in the case of neutral steps, and broadly elongate rhomboidal to sigmoidal basins in the case of overlapping steps. Generally, en-échelon basin margin system, dual opposing asymmetric depocenter, intrabasin relative structural high, and wide basin width can be used as indicators that a pull-apart basin is developing in transtension zones. 相似文献
66.
Fully nonlinear wave-body interactions for stationary surface-piercing single and double bodies are studied by a potential-theory-based fully nonlinear 2D numerical wave tank (NWT). The NWT was developed in time domain by using boundary element method (BEM) with constant panels. MEL free surface treatment and Runge–Kutta fourth-order time integration with smoothing scheme was used for free-surface time simulation. The acceleration-potential scheme is employed to obtain accurate time derivative of velocity potential. Using the steady part of nonlinear force time histories, mean and a series of higher-harmonic force components are calculated and compared with the experimental and numerical results of other researchers. The slow-decaying second-harmonic vertical forces are investigated with particle velocities and corresponding body pressure. Typical patterns of two-body interactions, shielding effect, and the pumping/sloshing modes of water column in various gap distances are investigated. The pumping mode in low frequencies is demonstrated by the comparison of velocity magnitudes. 相似文献
67.
A microstructure model of dual-porosity type is proposed to describe contaminant transport in fully-saturated swelling clays.
The swelling medium is characterized by three separate-length scales (nano, micro, and macro) and two levels of porosity (nano-
and micropores). At the nanoscale, the medium is composed of charged clay particles saturated by a binary monovalent aqueous
electrolyte solution. At the intermediate (micro) scale, the two-phase homogenized system is represented by swollen clay clusters
(or aggregates) with the nanoscale electrohydrodynamics, local charge distribution, and disjoining pressure effects incorporated
in the averaged constitutive laws of the electro-chemo-mechanical coefficients and the swelling pressure, which appear in
Onsager’s reciprocity relations and in a modified form of Terzaghi’s effective principle, respectively. The microscopic coupling
between aggregates and a bulk solution lying in the micropores is ruled by a slip boundary condition on the tangential velocity
of the fluid, which captures the effects of the thin electrical double layers surrounding each clay cluster. At the macroscale,
the system of clay clusters is homogenized with the bulk fluid. The resultant macroscopic picture is governed by a dual-porosity
model wherein macroscopic flow and ion transport take place in the bulk solution and the clay clusters act as sources/sinks
of mass of water and solutes to the bulk fluid. The homogenization procedure yields a three-scale model of the swelling medium
by providing new nano and micro closure problems, which are solved numerically to construct constitutive laws for the effective
electro-chemo-hydro-mechanical coefficients. Considering local instantaneous equilibrium between the clay aggregates and micropores,
a quasisteady version of the dual-porosity model is proposed. When combined with the three-scale portrait of the swelling
medium, the quasisteady model allows us to build-up numerically the constitutive law of the equilibrium adsorption isotherm,
which governs the instantaneous immobilization of the solutes in the clay clusters. Moreover, the constitutive behavior of
the retardation coefficient is also constructed by exploring its representation in terms of the local profile of the electrical
double layer potential of the electrolyte solution, which satisfies the Poisson–Boltzmann problem at the nanoscale. 相似文献
68.
随着气候变化影响加剧,全球气候治理进程加速,实现碳达峰已经成为全球气候行动的核心,各国也相继制定碳中和目标并开展行动。中国在第75届联合国大会一般性辩论上提出了碳达峰碳中和目标,部分已实现碳达峰的发达经济体也提出了各自的碳中和承诺。文中从“整体-阶段”及“焦点-公平”视角分析了欧盟和美国等主要发达经济体碳达峰的历程和特点,以及其碳中和目标和规划。研究发现,发达经济体在碳达峰过程中普遍经历了较长的爬坡期(58~136年)和平台期(4~20年),在碳达峰时,发达经济体的能源结构以油气为主,油气占一次能源消费比重为57%~77%,其人均排放量、历史累计排放以及人均GDP也都处于较高水平,在碳达峰前后总体处于经济与碳排放脱钩状态。各发达经济体的碳中和路径均以能源转型为重点,采用了多元化的政策工具,并且注重低碳和负碳技术的革新。根据发达经济体的政策展望,在实现碳中和时,均难以将绝对排放量降为零,都需要通过碳移除手段进行抵消。通过对比分析,发现中国的碳达峰和碳中和目标是具有雄心的气候承诺,相较其他发达经济体需要付出更大努力。建议运用全面综合的政策工具支撑碳中和目标的有效落实,加快中国的气候立法,在兼顾公正转型的同时推动能源结构调整,注重可再生能源和能效方面的新技术开发应用。 相似文献
69.
Effect of mooring-line stiffness on the performance of a dual coaxial-cylinder Wave-Energy Converter
A point-absorber-type Wave-Energy Converter (WEC) consisting of a floating vertical inner cylinder and an annular outer cylinder that slides along the inner one is considered. The two cylinders heave differently under wave excitation, and wave energy can be harnessed from the relative heave motion between the two cylinders using a Permanent Magnet Linear Generator (PMLG) as the Power Take-Off unit. A mooring cable is attached to the bottom of the inner cylinder. This paper aims to examine the effect of the stiffness of the mooring cable on the performance of the coaxial-cylinder WEC system. The two limiting cases of no mooring cable (freely floating inner and outer cylinders) and an infinitely stiff mooring cable (fixed inner cylinder) were also considered. To perform the analysis, hydrodynamic and interference coefficients of the two heaving cylinders were computed semi-analytically using the method of matched eigenfunction expansions. Experimentally determined viscous corrections on damping were also included in the model in order to have more realistic predictions. The performance of the system in terms of motion responses and capture width were predicted and discussed for both regular and irregular waves. The results of the analysis indicate that both the freely floating design and the design with rigidly moored inner cylinder are viable. The two limiting cases show similar optimal performances, albeit with very different optimal generator damping. However, an ill-chosen mooring-cable stiffness may cause the inner and the outer cylinders to have the same resonance frequency, eliminating the relative heave motion and leading to almost no energy extraction. This situation needs to be avoided when designing the mooring system for a coaxial-cylinder WEC. 相似文献
70.
能见度的观测及其仪器 总被引:22,自引:1,他引:21
该文介绍了目前世界上普遍应用的几种能见度仪的工作原理,比较了其优缺点,阐述了我国与其他国家在此方面的差距,并对今后我国能见度观测工作提出建议。 相似文献